Product Overview
• High-speed printing up to 300mm/s with stable output.
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Recommendations
As low as €17,25/roll (4+ rolls) | €16,10/roll (6+ rolls) | €14,95/roll (10+ rolls)
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Delivery
• EU (excl. CY & MT): Ships from Germany warehouse · 1–2 business days dispatch · 2–7 business days delivery after dispatch
• CY & MT: Ships from Germany warehouse · 1–2 business days dispatch · 15-30 business days delivery after dispatch
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High Speed
Stable Performance
Easy Print
Optimized fluid dynamics enable speeds up to 300mm/s while ensuring smooth, high-quality prints.
Strong layer adhesion ensures firm bonding and flawless prints, even at high speeds.
SnapSpeed PLA ensures smooth extrusion and optimized cooling for sleek,
detailed prints with a refined finish, even at high speeds.
Engineered for durability and strength. Perfect for functional parts and prototypes.
Resilient in the face of everyday use.
Bubble-free vacuum spools feed flawlessly. Anti-clog heat control eliminates jams and flow breaks. Tangle-to-tip precision.
SnapSpeed PLA is made from 100% renewable plant-based resources and packaged with fully biodegradable cardboard spools, offering a safer choice for both users and the environment.
RECOMMENDED PRINTING CONDITIONS5
*Based on a 0.4mm nozzle. Printing conditions may vary with different nozzle diameters.
Nozzle temperature
Classic: 190–210 °C
High-speed: 210–230 °C
Build plate temperature
25–60 °C
Build surface treatment
Glue when needed
Printing speed
Classic: 50-100mm/s
High-speed: 100-300mm/s
Drying setting
55°C for 6h
PHYSICAL PROPERTIES
Density
1.23g/cm³ at 21.5°C
Melt index
15.4 g/10min
THERMAL PROPERTIES
Glass transition temperature
59°C
Melting temperature
164°C
Crystallization temperature
96°C
Decomposition temperature
370°C
Vicat softening temperature
61°C
Heat deflection temperature (ISO 75 1.8MPa)
52°C
Heat deflection temperature (ISO 75 0.45MPa)
53°C
MECHANICAL PROPERTIES - Classic Speed
*Based on 0.4mm nozzle and 0.2mm layer thickness. Classic prirhting speed = 46.7mm/s, printing temperature = 210 °C
Young's modulus (X-Y)
Young's modulus (Z)
2689.8±92.0 MPa
Tensile strength (X-Y)
46.0±0.5 MPa
Tensile strength (Z)
37.3±0.7 MPa
Elongation at break
21.5±5.02%
Elongation at break (Z)
4.2±2.0%
Bending modulus (X-Y)
2868.2±78.4 MPa
Bending strength (X-Y)
76.5±0.9 MPa
Charpy impact strength (X-Y)
6.1±0.6 kJ/m²
MECHANICAL PROPERTIES - High Speed
*Based on 0.4mm nozzle and 0.2mm layer thickness. High printing speed = 300mm/s, printing temperature = 230 °C
Young's modulus (X-Y)
Young's modulus (Z)
2433.4±79.4 MPa
Tensile strength (X-Y)
43.9±0.4 MPa
Tensile strength (Z)
32.4±0.4 MPa
Elongation at break
15.1±3.9%
Elongation at break (Z)
3.3±0.5%
Bending modulus (X-Y)
2797.9±40.7 MPa
Bending strength (X-Y)
71.4±0.6 MPa
Charpy impact strength (X-Y)
5.0±0.5 kJ/m²
RECOMMENDED PRINTING CONDITIONS
*Based on a 0.4mm nozzle. Printing conditions may vary with different nozzle diameters.
Nozzle temperature
Classic: 190–210 °C
High-speed: 210–230 °C
Build plate temperature
25–60 °C
Build surface treatment
Glue when needed
Printing speed
Classic: 50-100mm/s
High-speed: 100-300mm/s
Drying setting
55°C for 6h
PHYSICAL PROPERTIES
Density
1.23g/cm³ at 21.5°C
Melt index
15.4 g/10min
THERMAL PROPERTIES
Glass transition temperature
59°C
Melting temperature
164°C
Crystallization temperature
96°C
Decomposition temperature
370°C
Vicat softening temperature
61°C
Heat deflection temperature (ISO 75 1.8MPa)
52°C
Heat deflection temperature (ISO 75 0.45MPa)
53°C
MECHANICAL PROPERTIES - Classic Speed
*Based on 0.4mm nozzle and 0.2mm layer thickness. Classic prirhting speed = 46.7mm/s, printing temperature = 210 °C
Young's modulus (X-Y)
Young's modulus (Z)
2689.8±92.0 MPa
Tensile strength (X-Y)
46.0±0.5 MPa
Tensile strength (Z)
37.3±0.7 MPa
Elongation at break
21.5±5.02%
Elongation at break (Z)
4.2±2.0%
Bending modulus (X-Y)
2868.2±78.4 MPa
Bending strength (X-Y)
76.5±0.9 MPa
Charpy impact strength (X-Y)
6.1±0.6 kJ/m²
MECHANICAL PROPERTIES - High Speed
*Based on 0.4mm nozzle and 0.2mm layer thickness. High printing speed = 300mm/s, printing temperature = 230 °C
Young's modulus (X-Y)
Young's modulus (Z)
2433.4±79.4 MPa
Tensile strength (X-Y)
43.9±0.4 MPa
Tensile strength (Z)
32.4±0.4 MPa
Elongation at break
15.1±3.9%
Elongation at break (Z)
3.3±0.5%
Bending modulus (X-Y)
2797.9±40.7 MPa
Bending strength (X-Y)
71.4±0.6 MPa
Charpy impact strength (X-Y)
5.0±0.5 kJ/m²
Frequently Asked Questions
The main difference is its suitability for high-speed printing. SnapSpeed PLA combines controlled material flow with optimized cooling and reliable layer bonding, allowing detailed and consistent results at speeds reaching 300 mm/s when the recommended settings are used. Standard PLA may require lower speeds to maintain comparable printing stability.
It is well suited to prototypes, functional components, and everyday models that need to be produced in less time. The material provides the layer adhesion and durability required for regular handling while maintaining a clean surface under suitable printing conditions. Parts intended for continuous heat exposure should be produced with a more heat-resistant material.
| Printing Mode | Print Speed | Nozzle Temperature | Build Plate Temperature |
| Classic | 50–100 mm/s | 190–210°C | 25–60°C |
| High-speed | 100–300 mm/s | 210–230°C | 25–60°C |
The recommended settings are based on a 0.4 mm nozzle. Printing conditions may vary depending on the nozzle diameter.
For stable high-speed extrusion with SnapSpeed PLA Filament, match the nozzle temperature to the print speed and keep the filament path clear, the filament dry, and the nozzle clean.
• Set the nozzle to 210–230°C for printing speeds between 100 and 300 mm/s.
• Check that the spool rotates without resistance and that the feeding path is not bent or obstructed.
• Store the filament in dry conditions; when drying is required, use 55°C for 6 hours.
• Inspect and clean the nozzle if extrusion becomes uneven or the material flow decreases.
• Recalibrate the relevant printing parameters when using a nozzle diameter other than 0.4 mm.
SnapSpeed PLA Filament offers limited heat resistance, with a heat deflection temperature of 52–53°C and a Vicat softening temperature of 61°C. The material is suitable for normal ambient-temperature applications but not for components exposed to prolonged heat.
No dedicated printing hardware is generally required. On Snapmaker U1, RFID recognition identifies the filament and loads preset information automatically, which reduces the number of settings that must be entered manually. Other compatible FDM printers can use SnapSpeed PLA normally, but the appropriate filament parameters must be configured by the user.